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Can Australia Power the Energy-Hungry Asia with Renewable Energy?

机译:澳大利亚可以用可再生能源为亚洲的能源需求大国供电吗?

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The Paris Agreement points out that countries need to shift away from the existing fossil-fuel-based energy system to limit the average temperature rise to 1.5 or 2 °C. A cost-optimal 100% renewable energy based system is simulated for East Asia for the year 2030, covering demand by power, desalination, and industrial gas sectors on an hourly basis for an entire year. East Asia was divided into 20 sub-regions and four different scenarios were set up based on the level of high voltage grid connection, and additional demand sectors: power, desalination, industrial gas, and a renewable-energy-based synthetic natural gas (RE-SNG) trading between regions. The integrated RE-SNG scenario gives the lowest cost of electricity (€52/MWh) and the lowest total annual cost of the system. Results contradict the notion that long-distance power lines could be beneficial to utilize the abundant solar and wind resources in Australia for East Asia. However, Australia could become a liquefaction hub for exporting RE-SNG to Asia and a 100% renewable energy system could be a reality in East Asia with the cost assumptions used. This may also be more cost-competitive than nuclear and fossil fuel carbon capture and storage alternatives.
机译:《巴黎协定》指出,各国需要脱离现有的以化石燃料为基础的能源系统,以将平均温度上升限制在1.5或2°C。针对东亚,到2030年模拟成本最优的100%基于可再生能源的系统,涵盖整个小时的每小时电力,海水淡化和工业天然气部门的需求。东亚地区分为20个子区域,根据高压电网的连接水平和其他需求领域(电力,海水淡化,工业气体和可再生能源为基础的天然气)建立了四种不同的情景-SNG)之间的交易。集成式RE-SNG方案可实现最低的电费成本(52欧元/兆瓦时),并且系统的年度总成本最低。结果与人们认为长途电力线可能有益于利用澳大利亚丰富的东亚太阳能和风能资源这一观点背道而驰。但是,澳大利亚可能会成为向亚洲出口RE-SNG的液化中心,并且在使用成本假设的情况下,在东亚可能实现100%可再生能源系统。这也可能比核和化石燃料的碳捕集与封存替代品更具成本竞争力。

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